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Comment on "Citrate adsorption can decrease soluble phosphate concentration in soils: Results of theoretical modelling'' by Marek Duputel, Nicolas Devau, Michel Brossard, Benoit Jaillard, Davey L. Jones, Philippe Hinsinger and Frederic Gerard (2013)

Gustafsson (forward), Jon Petter and Lumsdon, David G (2014). Comment on "Citrate adsorption can decrease soluble phosphate concentration in soils: Results of theoretical modelling'' by Marek Duputel, Nicolas Devau, Michel Brossard, Benoit Jaillard, Davey L. Jones, Philippe Hinsinger and Frederic Gerard (2013). Applied geochemistry. 46, 85-89
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Official URL: http://dx.doi.org/10.1016/j.apgeochem.2014.02.006

Abstract

By use of a multi-site surface complexation model, Duputel et al. (2013) showed that citrate can decrease the solubility of phosphorus in soils, in contrast to what is commonly expected. We have identified several major errors in their model, which put the conclusions in doubt. We argue that major re-evaluation of their modelling approach is needed. (c) 2014 Elsevier Ltd. All rights reserved.

Authors/Creators:Gustafsson (forward), Jon Petter and Lumsdon, David G
Title:Comment on "Citrate adsorption can decrease soluble phosphate concentration in soils: Results of theoretical modelling'' by Marek Duputel, Nicolas Devau, Michel Brossard, Benoit Jaillard, Davey L. Jones, Philippe Hinsinger and Frederic Gerard (2013)
Series/Journal:Applied geochemistry (0883-2927)
Year of publishing :2014
Depositing date:1 July 2015
Volume:46
Page range:85-89
Number of Pages:5
Publisher:Elsevier
ISSN:0883-2927
Language:English
Publication Type:Journal article
Refereed:Yes
Article category:Scientific peer reviewed
Version:Accepted version
Full Text Status:Public
Agris subject categories.:P Natural resources > P33 Soil chemistry and physics
Subjects:(A) Swedish standard research categories 2011 > 1 Natural sciences > 105 Earth and Related Environmental Sciences > Geochemistry
Agrovoc terms:citrates, adsorption, phosphorus, solubility
Keywords:ion adsorption, phosphorus, illite
URN:NBN:urn:nbn:se:slu:epsilon-e-2777
Permanent URL:
http://urn.kb.se/resolve?urn=urn:nbn:se:slu:epsilon-e-2777
Additional ID:
Type of IDID
Web of Science (WoS)000336654900008
DOI10.1016/j.apgeochem.2014.02.006
ID Code:12358
Faculty:NJ - Fakulteten för naturresurser och jordbruksvetenskap
S - Faculty of Forest Sciences
Department:(NL, NJ) > Dept. of Soil and Environment
(S) > Dept. of Soil and Environment
Deposited By: SLUpub Connector
Deposited On:01 Jul 2015 11:46
Metadata Last Modified:25 Feb 2016 00:15

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